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Nonlinear coupling between axisymmetrically-polarized ultrashort optical pulses in a uniaxial crystal

机译:单轴晶体中轴对称偏振的超短光脉冲之间的非线性耦合

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摘要

Nonlinear propagation of focused axisymmetrically-polarized ultrashort optical pulses along the optic axis in a uniaxial crystal is investigated experimentally and theoretically. The energy transfer between an azimuthally-polarized pulse and a radially-polarized pulse is observed. To analyze the nonlinear propagation, a general paraxial equation with a third-order nonlinearity for axisymmetrically-polarized pulses in a uniaxial crystal is derived and the extended Stokes parameters (ESPs) based on cylindrical coordinates are newly-introduced. The simulation results by using this equation, providing the calculated ESPs, well explain our experimental observations: 1) the energy transfer is attributed to the four-wave-mixing effect, reflecting the overlapping between the axisymmetrically polarized modes, 2) the variations of the polarization defined from the ESPs are clarified to be affected by the self-and the cross-phase modulations, which make the effective propagation length long or short.
机译:实验和理论上研究了聚焦的轴对称偏振超短光脉冲在单轴晶体中沿光轴的非线性传播。观察到在方位极化脉冲和径向极化脉冲之间的能量转移。为了分析非线性传播,导出了单轴晶体中轴对称偏振脉冲的具有三阶非线性的一般旁轴方程,并新引入了基于圆柱坐标的扩展斯托克斯参数(ESP)。通过使用该方程式进行的仿真结果,提供了计算得出的ESP,很好地解释了我们的实验观察结果:1)能量传递归因于四波混频效应,反映了轴对称极化模式之间的重叠,2)明确了由ESP定义的极化受自相位调制和交叉相位调制的影响,这会使有效传播长度变长或变短。

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